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Electron beam radiation curing of natural rubber filled with silica-graphene mixture prepared by latex mixing

机译:通过乳胶混合制备的填充二氧化硅 - 石墨烯混合物的天然橡胶电子束辐射固化

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The mechanical properties of irradiated natural rubber (NR) composites filled with silica (SiO2) and graphene nanoplatelets (GE) mixture have not been studied sufficiently for more understanding since they are interesting composites. SiO2/GE mixture produced by mixing method were added to NR by latex mixing. The products were subsequently cured by EB irradiation to form NR composites. Filler content (1, 2.5 and 5 phr), the proportion of GE in the fillers (0.008%, 0.056%, 3.23% and 14.29%), and EB irradiation dose (100, 150, 200 and 250 kGy) were varied in these NR composites. The results of EDXS elemental mapping confirmed the presence of GE in the SiO2/GE filler, while the FTIR results confirmed that no new functional groups occurred between SiO2 and GE. Mechanical and thermal properties of NR composites were investigated. Scanning electron microscope (SEM) indicated good dispersion of GE and SiO2/GE in the NR matrix. The results showed that EB irradiation could be used as a mean of crosslinking NR composites to improve their tensile properties. NR filled with 2.5 phr of the SiO2/0.056%GE mixture cured by an EB irradiation dose of 150 kGy (NR/SiO2/0.056%GE(-EB)) showed the highest tensile strength, as well as acceptable moduli at 100, 300, and 500% strain. The tear strength of the composites was higher than that of NR filled with only SiO2(NR/SiO2-EB), while NR filled only with GE (NR/GE(-EB)) added in an equivalent amount and using the same irradiation dose could greatly improve moduli and tear strength. It was found that high GE content (3.23% or higher) in SiO2/GE mixture lowered the tensile strength of the composites. The effect of the curing step in EB irradiation on tensile properties was also studied by comparison between one-time irradiated composites and two-times irradiated composites. It was found that crosslink density increased when repeating the EB irradiation step on the NR composites and increasing EB irradiation dose to more than 150 kGy, which impacted negatively on movement of the molecular chain, resulting in a negative effect for tensile strength. Thermogravimetric analysis results indicated that there was a small improvement of thermal stability of NR/SiO2/0.056%GE(-EB) compared with NR-EB. Moreover, the degradation temperature (T-d) of the composites decreased with applying high EB doses to the composite. Therefore, GE could be used as an individual filler or hybrid filler with SiO2 to improve mechanical properties of irradiated NR composites.
机译:填充有二氧化硅(SiO 2)和石墨烯纳米片(Ge)混合物的辐照天然橡胶(NR)复合材料的机械性能尚未得到足够的认识,因为它们是有趣的复合材料。通过乳胶混合将通过混合方法制备的SiO 2 / GE混合物加入NR中。随后通过EB辐射固化产物以形成NR复合材料。填料含量(1,2.5和5phr),填料中GE的比例(0.008%,0.056%,3.23%和14.29%),并在这些中变化了EB辐照剂量(100,150,200和250 kgy) NR复合材料。 EDXS元素映射的结果证实了在SiO 2 / GE填料中的GE的存在,而FTIR结果证实,SiO2和GE之间没有发生新的官能团。研究了NR复合材料的机械和热性能。扫描电子显微镜(SEM)在NR矩阵中表明GE和SiO2 / Ge的良好分散。结果表明,EB辐射可用作交联NR复合材料的平均值,以改善其拉伸性能。用150kGy的EB辐射剂量固化的NR填充2.5phr的SiO2 / 0.056%Ge混合物(NR / SiO 2 / 0.056%Ge(-eb))显示了最高的拉伸强度,以及100,300的可接受的模态和500%的菌株。复合材料的撕裂强度高于仅填充SiO2(NR / SiO2-EB)的NR的撕裂强度,而仅用GE(NR / GE))以等同量添加的NR(NR / GE(-EB))并使用相同的辐照剂量可以大大提高模态和撕裂力量。发现SiO 2 / Ge混合物中的高GE含量(3.23%或更高)降低了复合材料的拉伸强度。通过在一次性照射复合材料和两次辐照复合材料之间进行比较,还研究了在EB辐射对拉伸性质的EB辐射的影响。发现在NR复合材料上的EB辐射步骤中并将EB照射剂量增加到超过150kGy时,交联密度增加,这对分子链的运动产生负面影响,导致拉伸强度的负面影响。与NR-EB相比,热重分析结果表明,与NR-EB相比,NR / SiO2 / 0.056%Ge(-eb)的热稳定性较小。此外,复合材料的降解温度(T-D)随着将高EB剂量施加到复合物中而降低。因此,GE可以用作具有SiO 2的单独填料或杂交填料,以改善辐照NR复合材料的机械性能。

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